Drivers Super Image Digital

12/10/2021by admin
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Dubbed the “microPocket DV”, the stylish new GR-DVP3 packs all the high-performance features found on JVC’s top-of-the-line MiniDV units into an ultra-compact personal video device small enough to slip comfortably into your pocket. With its full-flat body and brushed aluminum surface, this stunning example of modern design looks nothing like you’d expect a camcorder to look. But the GR-DVP3 doesn’t just look incredible. It also offers truly incredible performance. With its 680,000-pixel CCD and its Super High-Band Processor, the GR-DVP3 is no lightweight when it comes to image quality. Even more impressive, this tiny little camera comes provided with a full set of multimedia interfaces and features including JVC’s exclusive MPEG4 Video Clips for Email, MP3 Sound Effects, as well as a USB connector and SD Memory Card slot. The GR-DVP3 has been designed to offer the best possible DV imaging performance in a compact design. In combination with a new Super High-Band Processor, a 680,000-pixel CCD image sensor produces truly impressive image quality with an incredible 520 lines of horizontal resolution. To ensure that the image is as sharp and crisp as possible, the high-band processor intelligently calculates and restores the high-band components of the luminance signal that would be lost in conventional processing. Built-in digital still camera with HG Snapshot The GR-DVP3’s built-in digital still camera can capture crystal-clear still images for output in either XGA mode (1024 x 768 pixels) or VGA mode (640 x 480 pixels). The HG Snapshot function is able to deliver high resolution still pictures using a combination of mechanical shutter system and 680,000-pixel CCD to capture highly detailed full frame stills offering 1.5 times the vertical resolution of conventional field stillsThe GR-DVP3 is provided with a variety of multimedia interfacing capabilities that will make it easy for users to transfer their DV recordings to a computer for editing, processing or printing. A DV input/output (i.Link, IEEE 1394 compliant) terminal enables fast, lossless DV signal transfer to a computer or for dubbing to another DV unit. For even more convenience, the GR-DVP3 incorporates a USB terminal for quick, plug-and-play high-speed data transfer (digital stills/sound effects/MPEG4 clips) to any USB-equipped computer. For additional flexibility, it’s also provided with a removable SD Memory Card (8MB) that makes it easy to download digital stills, video clips and sound effects from the camera to a compatible PC, or vice versa. Compatible with conventional MultiMediaCard. JVC’s exclusive Info-Shoe plugs you into a wide range of performance-enhancing accessories that make it easy for you to expand your creative vision. Connectable by this exclusive hot-shoe which supplies power to the attached accessory and acts as conduit for control signals, available accessories (optional) include Auto Light, Video Flash, and Stereo Zoom Microphone. For clearer, brighter night shots, the GR-DVP3 includes JVC’s powerful NightAlive function. NightAlive’s enhanced low-light sensitivity lets you capture clear, full-color night images without relying on infrared rays as do similar systems. As a result, the image you shoot is always in color and there’s no limit on shooting range.
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You can use DISM to install or remove driver (.inf) files in an offline Windows or WinPE image. You can either add or remove the drivers directly by using the command prompt, or apply an unattended answer file to a mounted .wim, .ffu, .vhd, or .vhdx file.

When you use DISM to install a device driver to an offline image, the device driver is added to the driver store in the offline image. When the image is booted, Plug and Play (PnP) runs and associates the drivers in the store to the corresponding devices on the computer.


To add drivers to a Windows 10 image offline, you must use a technician computer running Windows 10, Windows Server 2016, or Windows Preinstallation Environment (WinPE) for Windows 10. Driver signature verification may fail when you add a driver to a Windows 10 image offline from a technician computer running any other operating system.

To learn how to add a driver on a running Windows PC, see Add a driver online in audit mode or Install a plug and play device. To learn how to add a driver to a PC running WinPE, see Drvload command line options.

Driver types

  • .inf-style drivers: Many drivers include an information file (with an .inf extension) to help install the driver. These can be installed using tools described in this topic.
  • .exe-style drivers: Drivers without an .inf file often must be installed like typical Windows desktop applications. To learn how to add these, see Add a driver online in Audit Mode
  • Boot-critical drivers: Graphics and storage drivers may sometimes need to be added to the Windows image (as shown in this topic), as well as the Windows PE image, and in the Windows recovery (WinRE) image.

Add drivers to an offline Windows image

To add drivers to an offline image, you have to mount an image prior to adding drivers.

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If you're adding drivers to a WinPE image, you can add them to the WinPE image in the output folder you specified when you ran copype, for example: C:WinPE_amd64mediasourcesboot.wim. This ensures that drivers will be included in WinPE each time you build WinPE media from that folder.

  1. Mount a Windows image. For example:

    See Mount and modify a Windows image using DISM for more info.

  2. Add a driver to the image.

    To install all of the drivers from a folder and all its subfolders, point to the folder and use the /Recurse option.

    To see all DISM driver servicing command line options, see DISM driver servicing command-line options.


Drivers Super Image Digital Camera


Using /Recurse can be handy, but it's easy to bloat your image with it. Some driver packages include multiple .inf driver packages, which often share payload files from the same folder. During installation, each .inf driver package is expanded into a separate folder. Each individual folder has a copy of the payload files. We've seen cases where a popular driver in a 900MB folder added 10GB to images when added with the /Recurse option.

  1. Check to see if the driver was added. Drivers added to the Windows image are named Oem*.inf. This guarantees unique naming for newly added drivers. For example, the files MyDriver1.inf and MyDriver2.inf are renamed Oem0.inf and Oem1.inf.

  2. Commit the changes and unmount the image.

Remove drivers from an offline Windows image

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  1. At an elevated command prompt, mount the offline Windows image:

  2. Remove a specific driver from the image. Multiple drivers can also be removed on one command line.


Removing a boot-critical driver package can make the offline Windows image unbootable. For more information, see DISM Driver Servicing Command-Line Options.

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  1. Commit the changes and unmount the image.

Add drivers to an offline Windows image by using an unattended answer file

  1. Gather the device driver .inf files that you intend to install on the Windows image.


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All drivers in the directory and subdirectories that are referenced in the answer file are added to the image. You should manage the answer file and these directories carefully to address concerns about increasing the size of the image with unnecessary driver packages.

  1. Use Windows System Image Manager (Windows SIM) to create an answer file that contains the paths to the device drivers that you want to install.

    • Add the Microsoft-Windows-PnpCustomizationsNonWinPEDriverPathsPathAndCredentialsCredentials component to your answer file in the offlineServicing configuration pass.

    For each location that you intend to access, add a separate PathAndCredentials list item by right-clicking on DriverPaths in the Answer File pane and clicking Insert New PathAndCredentials.

    See Configure components and settings in an answer file for information on how to modify an answer file.

  2. For each path in Microsoft-Windows-PnpCustomizationsNonWinPE, specify the path to the device driver and the credentials that are used to access the file, if the file is on a network share.


When you include multiple device driver paths by adding multiple PathAndCredentials list items, you must increment the value of Key for each path. For example, you can add two separate driver paths where the value of Key for the first path is equal to 1 and the value of Key for the second path is equal to 2.

  1. Save the answer file and exit Windows SIM. The answer file must resemble the following sample.

  2. Mount the Windows image that you intend to install the drivers to by using DISM:

    If you're working with a VHD or FFU, specify /Index:1.

  3. Apply the answer file to the mounted Windows image:

    For more information about how to apply an answer file, see DISM Unattended Servicing Command-Line Options.

    The .inf files referenced in the path in the answer file are added to the Windows image.

  4. Check to see if the driver was added. Drivers added to the Windows image are named Oem*.inf. This guarantees unique naming for newly added drivers. For example, the files MyDriver1.inf and MyDriver2.inf are renamed Oem0.inf and Oem1.inf.

    For example, type:

  5. Unmount the .wim file and commit the changes. For example, type:

If you need drivers for WinPE to see the local hard disk drive or a network, you must use the windowsPE configuration pass of an answer file to add drivers to the WinPE driver store and to reflect boot-critical drivers required by WinPE. For more information, see Add Device Drivers to Windows During Windows Setup.

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